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深入的定量蛋白质组学揭示了利什曼原虫(Viannia)物种中的种特异性代谢程序。

In-depth quantitative proteomics uncovers specie-specific metabolic programs in Leishmania (Viannia) species.

机构信息

Laboratório de Pesquisa em Leishmanioses, Instituto Oswaldo Cruz, Fiocruz, Rio de Janeiro, RJ, Brazil.

Biochemical Proteomics Group, Department of Proteomics and Signal Transduction, Max-Planck-Institute of Biochemistry, Martinsried, Germany.

出版信息

PLoS Negl Trop Dis. 2020 Aug 17;14(8):e0008509. doi: 10.1371/journal.pntd.0008509. eCollection 2020 Aug.

Abstract

Leishmania species are responsible for a broad spectrum of diseases, denominated Leishmaniasis, affecting over 12 million people worldwide. During the last decade, there have been impressive efforts for sequencing the genome of most of the pathogenic Leishmania spp. as well as hundreds of strains, but large-scale proteomics analyses did not follow these achievements and the Leishmania proteome remained mostly uncharacterized. Here, we report a comprehensive comparative study of the proteomes of strains representing L. braziliensis, L. panamensis and L. guyanensis species. Proteins extracted by SDS-mediated lysis were processed following the multi-enzyme digestion-filter aided sample preparation (FASP) procedure and analysed by high accuracy mass spectrometry. "Total Protein Approach" and "Proteomic Ruler" were applied for absolute quantification of proteins. Principal component analysis demonstrated very high reproducibility among biological replicates and a very clear differentiation of the three species. Our dataset comprises near 7000 proteins, representing the most complete Leishmania proteome yet known, and provides a comprehensive quantitative picture of the proteomes of the three species in terms of protein concentration and copy numbers. Analysis of the abundance of proteins from the major energy metabolic processes allow us to highlight remarkably differences among the species and suggest that these parasites depend on distinct energy substrates to obtain ATP. Whereas L. braziliensis relies the more on glycolysis, L. panamensis and L. guyanensis seem to depend mainly on mitochondrial respiration. These results were confirmed by biochemical assays showing opposite profiles for glucose uptake and O2 consumption in these species. In addition, we provide quantitative data about different membrane proteins, transporters, and lipids, all of which contribute for significant species-specific differences and provide rich substrate for explore new molecules for diagnosing purposes. Data are available via ProteomeXchange with identifier PXD017696.

摘要

利什曼原虫物种可引起广泛的疾病,被称为利什曼病,影响全球超过 1200 万人。在过去的十年中,人们为测序大多数致病性利什曼原虫物种以及数百株菌株的基因组做出了令人瞩目的努力,但大规模蛋白质组学分析并没有跟上这些进展,利什曼原虫蛋白质组仍然在很大程度上没有被描述。在这里,我们报告了对代表利什曼原虫巴西利什曼原虫、利什曼原虫巴拿马利什曼原虫和利什曼原虫圭亚那利什曼原虫物种的菌株的蛋白质组进行的全面比较研究。通过 SDS 介导的裂解提取蛋白质,然后通过多酶消化-过滤辅助样品制备(FASP)程序处理,并通过高精度质谱分析。“总蛋白方法”和“蛋白质标尺”被用于蛋白质的绝对定量。主成分分析表明生物重复之间具有非常高的重现性,并且三个物种之间的差异非常明显。我们的数据集包含近 7000 种蛋白质,代表了迄今为止已知的最完整的利什曼原虫蛋白质组,并且提供了这三个物种的蛋白质组在蛋白质浓度和拷贝数方面的全面定量图像。对主要能量代谢过程中蛋白质丰度的分析使我们能够突出物种之间的显著差异,并表明这些寄生虫依赖于不同的能量底物来获得 ATP。虽然利什曼原虫巴西利什曼原虫更多地依赖糖酵解,但利什曼原虫巴拿马利什曼原虫和利什曼原虫圭亚那利什曼原虫似乎主要依赖线粒体呼吸。这些结果通过生化测定得到证实,这些物种的葡萄糖摄取和 O2 消耗表现出相反的模式。此外,我们提供了有关不同膜蛋白、转运蛋白和脂质的定量数据,所有这些都导致了显著的物种特异性差异,并为探索用于诊断目的的新分子提供了丰富的底物。数据可通过 ProteomeXchange 以标识符 PXD017696 获得。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0e07/7451982/b8dbed81e6a8/pntd.0008509.g001.jpg

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